95 resultados para Qualidade superficial
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The lack of research related to wood machining processes, including the milling, as well as the increased use of this material in the industrial sector, it creates a need to increase research involving these processes, as the sector is in full technological and environmental remodeling. This paper studies the process of milling wood, presenting an analysis of the effects of cutting speed on surface quality by measuring roughness. We used a forward speed three cutting speeds, two species of wood (Pinus elliottii and Eucalyptus grandis) and two milling tools (roughing and finishing) machined by milling concordant and discordant. Each condition was repeated six times, and the measurements were performed in the opposite direction and in favor of cutting tool, generating results of the parameters Ra (average roughness) totaling 144 trials with it. These results were statistically analyzed using analysis of variance and Tukey test. Finally it was concluded that there are significant differences between the results of varying roughness when cutting speeds, milling and types of machining types tested
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The technological expansion and market manufactured wood as wood paneling makes the research of processes involving this material are increasingly necessary . The present study examines the milling process MDF - fiberboard with average density endmill with helical teeth , with the analysis of the surface finish by evaluating the surface roughness ( Ra) and analysis of the power consumption . We analyzed three types of cuts in milling : concordant , discordant , and cut top . We used 5 rpm (6000 , 8000 , 10000 , 12000 and 14000 RPM) , establishing five-speed cutting, 301 , 402 ,502, 603 and 703 m / min respectively. Five forward speeds and 4, 6, 8, 10 and 12 m / min. Each condition was repeated six times , totaling 180 tests. The results of roughness were obtained from rugosimeter data and the power consumption were obtained by Hall-effect sensor . These results were statistically analyzed using analysis of variance and Tukey test . Finally it was concluded that there are few significant differences between the results themselves vary roughness when cutting speeds and feed and no major differences in power consumption . The best surface quality and lower power consumption were for cutting speed of 703 m / min . To varying forward speed , the speed of 4 m / min showed better surface quality and lower power consumption
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The process of milling wood is widely used in operations such as planing and manufacturing frames . Machines like planers , desengrossadeiras , routers , moldureiras and machining centers employ the milling process for cutting wood . In this work the process of milling CNC machining center of Eucalyptus grandis was studied because this is very much used in furniture , but without consistent studies on this process . This work a CNC machining center brand TECH Z1 for analysis of surface quality ( Ra ) in relation to the variation of cutting speed and feed in concordant and discordant tangential milling and face milling was used . We used Eucalyptus grandis . Four forward speeds ( 3, 5 , 7, and 9 m / min ) for four shear rates ( 5,9; 8,4; 10,9 and 13,4 m/s ) were used. Was used for testing a cutter finishing top speed steel with helical teeth 16mm in diameter . 6 repetitions for each test condition were performed . From the results it was observed that the best results for roughness Vc = 10,9 m / s were obtained for the milling concordant with the forward speed Vf = 7 m / min. As for Vf = 5 m / min the best finish was achieved with Vc = 8,4 m /s in discordant for milling . The feedrate and cutting influenced the roughness . The senses of concordant and discordant and cut the top and the top had a significant difference in roughness
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The Sanding is a complex process involving many variables that affect the quality of the part produced, working mainly in the timber industry in the production of panels (MDF, MDP, HDF, etc...) and furniture. However, these industries use the sanding process empirically, not optimizing it. The aim of this study was to compare the behavior of sandpaper white aluminum oxide (OA-white) and Black silicon carbide (SiC-black), analyzing variables in the process as: strength, power, emission, vibration, wear particle size of sanding, and its consequences on the surface finish of the workpiece. Made the process of plane grinding samples of Pinus elliottii, processed in parallel to the fibers, which were sanded with sandpaper grain OA white and black 3-SiC abrasive conditions (new, moderately eroded and severely eroded) grain sizes in 3 (80, 100, and 120 mesh). 6 replicates was performed for each condition tested. Each trial was captured output variables of the sanding process: strength, power, emission and vibration. With two stages totaling 108 trials. After the sanded samples, it has the same surface quality by raising the surface roughness Ra. Through experiment, it can be concluded that abrasives OA-white tended to have higher strength, power, emissions and less vibration in the sanding process, compared to the SiC-black. However, surface finish exhibited similar to the particle size of 80 to 100 mesh, worn abrasive conditions. However, the particle size of 120 mesh, obtained by the roughness of sandpaper OA-bank was higher compared to SiC-black to all conditions of sandpaper due to its toughness
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The process of sanding wood is little known and industries use it in a practical way without having studied their best conditions before. There are few studies involving this type of machining. On this basis, this paper studied the effects of varying moisture content of the wood surface quality after the sanding process. It was used a sanding machine with flat horizontal cut parallel to the fibers, using: 02 different species (Pinus elliottii and Corymbia citriodora); 01 sanding abrasive (aluminum oxide) and 03 different particle size abrasives ( P80 , P100 and P120 ) . Initially, the pieces were acclimatized ( 2 ± 7% , 12% and 17% ± 2 ± 2 ) and subsequently passed by the sanding process, and therefore, the surface roughness was analyzed. For each condition, were performed 06 repetitions totaling 54 trials for each species. We analyzed the effects of wood moisture by capturing the power sanding, rougheness, acoustic emission and maximum temperature during the sanding process. The variation of moisture content produced changes in the surface quality of the finished parts, and these changes were more marked in Pinus than Corymbia. During the sanding process of the specimens with 7 % and 12 % humidity, there was a lower noise emission, power consumption and heating surface. When checking the roughness of these parts after this process, it was observed that the surface quality of them were superior in the parts sanded containing 17 % moisture
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The plastic deformation is widely used in the metallurgical market due to its positive factors such as low prices and high speed production. Forming process products are obtained in high quality, both surface quality and mechanical properties. Friction is an importante factor in metal forming. Friction study in metal forming can be accomplished indirectly, such as the ring test of friction. Two samples of different materials being mild steel and copper alloy were used. The results showed the influence of friction in the flow behavior of the deformation of the second phase, as evidenced by standard metallography. It is observed that in the outer regions of the ring, plastic deformation occured in the radial direction. In the central region of the disc deformation occured in the direction of compression and the inner region of the ring flux lines showed a significant deformation in the radial direction towards the center of the ring
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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)
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O processo de retificação é considerado um dos últimos na cadeia de produção de peças de precisão. Assim, é essencial ter um sistema de monitoramento confiável para este processo. Neste trabalho é proposto um sistema de medição de vibração, rápido e versátil, baseado na plataforma de prototipagem eletrônica de hardware livre Arduino, com objetivo de monitorar em tempo real o processo de retificação plana, especialmente no que diz respeito à condição da peça retificada. Para este trabalho ensaios experimentais foram realizados numa máquina retificadora plana, empregando um rebolo de óxido de alumínio e uma peça de aço ABNT 1020. Por meio de um sensor piezelétrico de PZT (Pb-Lead Zirconate Titanate) de baixo custo, instalado junto à peça e conectado a uma das portas analógicas do hardware, foi possível medir o sinal de vibração durante o processo de retificação. Verificou-se que, a medida com que o rebolo perdia sua capacidade de corte, em função das consecutivas passadas sobre a peça, ocorria também uma significativa diminuição dos valores médios do sinal de vibração. Tal diminuição do sinal de vibração pode indicar o momento que o rebolo deve ser dressado, permitindo monitorar a qualidade superficial da peça durante o processo de retificação, evitando danos como é o caso da queima superficial. O princípio de operação e as principais características dessa técnica foram investigados, bem como algumas de suas limitações práticas.
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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)
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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)
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A produtividade da soja, no sistema de semeadura direta (SSD), pode ser influenciada pelo tipo de cobertura vegetal que antecede, bem como pela calagem superficial. Todavia, os efeitos dessa técnica sobre os componentes da produção e sobre a qualidade fisiológica das sementes têm sido pouco estudados, principalmente para a soja safrinha sob SPD. Assim, objetivou-se avaliar algumas características agronômicas, os componentes da produção, a produtividade e a qualidade fisiológica da semente da soja cultivada na safrinha, em função de diferentes coberturas vegetais, com e sem calagem superficial, sob SSD. O experimento foi conduzido no ano de 1999/00, na Fazenda Experimental Lageado, FCA/UNESP/Botucatu-SP. O delineamento experimental foi o de blocos casualizados em parcela subdividida, com 4 repetições. As parcelas de 6m x 10m, foram constituídas de sorgo de Guiné vermelho e branco (Sorghum bicolor), milheto (Pennisetum americanum), painço (Panicum dichotomiflorum), vegetação espontânea e sem vegetação. Aos 53 dias após a emergência, as coberturas vegetais foram dessecadas e acamadas, seguindo-se a aplicação superficial de 3,1 t.ha-1 de calcário na metade das parcelas, visando à elevação da V%=70%. Após 2 semanas, realizou-se a semeadura da soja, cv. IAC-19, em safrinha. Determinou-se o estande final, a altura de inserção da primeira vagem, a altura de planta, o número total de vagens e vagens chochas por planta, o número de sementes por vagem total, a massa de 100 sementes e a produtividade. Com relação à qualidade fisiológica das sementes determinou-se a germinação e o vigor, por meio dos testes de envelhecimento artificial, germinação a temperatura subótima, M.S. de plântula e condutividade elétrica. Na implantação do SSD, a cobertura vegetal e a calagem superficial não afetam as características agronômicas, os componentes da produção, a produtividade de sementes e a qualidade fisiológica das sementes de soja cultivadas em safrinha, com exceção da condutividade elétrica.
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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)
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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)
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O pinhão-manso é uma espécie arbustiva que está se destacando pelo interesse para produção de biocombustível, porém, os estudos sobre controle de qualidade das sementes estão se iniciando. Neste trabalho objetivou-se estudar o efeito da temperatura e do tempo de contagem na germinação de sementes de pinhão-manso, conduzido em papel toalha bem como avaliar a qualidade sanitária das sementes, desinfestadas ou não com hipoclorito de sódio, a 2%. O estudo foi conduzido, com sementes de pinhão-manso extraídas de frutos maduros, coletados na planta. O teste de germinação foi conduzido nas temperaturas de 25 ºC e alternadas de 20-30 ºC, com contagens aos 6, 9 e 12 dias. O teste de sanidade foi conduzido a 20 ºC com fotoperíodo de 12 h por 7 dias. Foi utilizado o delineamento experimental inteiramente casualizado com quatro repetições e empregado o teste F na análise de variância dos dados de germinação e do índice de velocidade de germinação. As médias foram comparadas pelo teste de Tukey a 5% de probabilidade. O potencial máximo de germinação das sementes de pinhão-manso foi obtido na temperatura de 25 ºC, com contagens aos seis, nove e 12 dias, entretanto não apresentou diferença significativa com as temperaturas de 20-30 ºC, nas contagens aos 9 e 12 dias. As sementes de pinhão-manso analisadas apresentaram alta frequência de espécies fúngicas, independente da desinfestação superficial. A incidência de fungos em ordem decrescente foi dos gêneros: Alternaria, Macrophomina, Cladosporium, Colletotrichum, Fusarium, Pestalotiopsis, Phoma, Helminthosporium, Epicocum e Nigrospora a maioria destes fungos apresenta potencial patogênico.
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The conventional system for soil management and preparation has the intensive mechanization as its basic principle and that changes soil properties, especially physical ones, faster and significantly. This study aimed to obtain and compare physical properties such as distribution of particle sizes, density, distribution of pore sizes, curves of water retention and degradation index of a Red Latosol, under intensive cultivation and no-cultivation for six years. Soil samples were collected at depths of 0.1, 0.2, 0.3, 0.4, 0.6, 0.8 and 1.0 m. There was a clay increment as a result of cultivated soil increase. The no-till soil density decreased as depth increased; however, in the arable layer (0.3 m) of the cultivated soil, the opposite was verified. The largest volume of pores was verified in the cultivated soil, especially in the superficial layers. In the smallest applied tension (0.001 MPa), the cultivated soil retained more water; however, starting from 0.033 MPa, the highest humidity values occurred in the no-till soil. The highest degradation index was observed at a depth of 0.1 m in no-till soil. However, that value was superior (0.020) to what is physically considered very poor soil.